Transmit & Receive Path Diplexers
Design
Using specialized bespoke modeling software and high speed computing power, customized
product development time scales are remarkably fast. By entering specification
parameters onto a computer the complete model can be produced ready for drawing
within hours. The accuracy and repeatability of this process is most important,
and Andrew has developed and refined this over many years.
Manufacturing
Taking the computerized model, the final hardware is manufactured
using high speed, high accuracy, state-of-the art CNC machines.
With extremely high tolerances, Andrew is able to reproduce
the design, in many cases without the need for any post tuning.
Eliminating tuning saves time and leads to a more reliable product
in the field. Andrew is ideally suited for both low- and high-volume manufacture of diplexers with fast turnaround on customer specifications and high yield. Where most diplexers
are specifically designed around customer specification, Andrew
works with customers for a complete
solution. New and innovative ideas are constantly being developed
to increase efficiency of manufacture and improve the lead
time of the design process.
Features
Particular features of the diplexers in Andrew's product range are low
insertion loss (typically less than 1.2 dB), stability over a wide operating
temperature range (130 degrees) and the reliable long term performance. Particularly
stringent performance requirements can be accommodated, even at the highest
operational frequencies.
Telecommunications Diplexers
Andrew has been developing telecommunications diplexers for point-to-point
and point-to-multipoint applications since 1998. The company has produced
many variants that are at the heart of communications systems around the
world today. Of primary concern is designing and effiiciently producing a pre-tuned, accurate, and reliable product. Very often a low pass filter is incorporated within the body to
eliminate harmonic frequencies from interfering with the radio reception
and transmission bands. Andrew diplexers can be machined from copper or
aluminum, soldered or brazed together, and plated or painted to provide
a protective environmental seal. Each diplexer contains a series of irises
and cavities in a precise configuration designed to meet individual
specifications.
Product Range
Typical frequency coverage is from 10 to 48 GHz with particular emphasis on
the microwave link bands centered around 13, 15, 18, 23, 26, 28, 31 and 38 GHz.
Development of diplexers outside these bands is possible, and Andrew has
the capability to design and test diplexers from 350 MHz up to 75 GHz.
Solutions
Andrew offers other communication components for radio links such as
flexible waveguide to link the radio to the antenna, hot standby couplers
to protect the radio on key communication links, rigid waveguide
assemblies, horn antennas, power splitters/combiners, and transmit/receive
filters.
Frequency
(GHz) |
WG
Size |
Duplex
Spacing
(MHz) |
Pass Band
Bandwidths
(MHz) |
Tx/Rx
Isolation
(dB) |
Pass Band
Return Loss
(dB) |
Pass Band
Insertion Loss
(dB) |
| 13 |
18 |
266 |
84 |
20 |
16 |
1.2 |
| 15 |
18 |
420 |
150 |
60 |
18 |
1.0 |
| 18 |
20 |
340 |
90 |
70 |
20 |
2.5 |
| 18 |
20 |
1010 |
270 |
65 |
18 |
1.0 |
| 23 |
20 |
1008 |
400 |
70 |
18 |
1.2 |
| 26 |
20 |
1000 |
350 |
70 |
16 |
1.2 |
| 38 |
22 |
1260 |
300 |
65 |
18 |
1.4 |
| 38 |
22 |
700 |
350 |
55 |
16 |
2.3 |
Required Ordering Information
Andrew will produce a solution for your application. To design and manufacture customized filters, we need to know several key parameters. Please take note of the following list so that we can produce a solution for you.
Full electrical specifications including:
- Frequency of operation
- Rejection bandwidth
- Harmonic rejection (If any)
- Insertion loss
- Return loss
- Group delay flatness
- Ripple over passband
- Operating temperature range
- Mechanical outline
- Weight
- Environmental constraints
- Quantities and target price